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High-resolution inversion of methane emissions in the Southeast US using SEAC4RS aircraft observations of atmospheric methane: anthropogenic and wetland sources

机译:使用SeaC4RS飞机观察大气甲烷的Southeast美国甲烷排放的高分辨率反转:人类学和湿地来源

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We use observations of boundary layer methane from the SEAC4RS aircraft campaign over the Southeast US in August–September?2013 to estimate methane emissions in that region through an inverse analysis with up to 0.25°×0.3125° (25×25km2) resolution and with full error characterization. The Southeast US is a?major source region for methane including large contributions from oil and gas production and wetlands. Our inversion uses state-of-the-art emission inventories as prior estimates, including a?gridded version of the anthropogenic EPA Greenhouse Gas Inventory and the mean of the WetCHARTs ensemble for wetlands. Inversion results are independently verified by comparison with surface (NOAA∕ESRL) and column (TCCON) methane observations. Our posterior estimates for the Southeast US are 12.8±0.9Tg?a?1 for anthropogenic sources (no significant change from the gridded EPA inventory) and 9.4±0.8Tg?a?1 for wetlands (27% decrease from the mean in the WetCHARTs ensemble). The largest source of error in the WetCHARTs wetlands ensemble is the land cover map specification of wetland areal extent. Our results support the accuracy of the EPA anthropogenic inventory on a?regional scale but there are significant local discrepancies for oil and gas production fields, suggesting that emission factors are more variable than assumed in the EPA inventory.
机译:我们在8月至9月在东南部的SeaC4R飞机运动中使用边界层甲烷的观察到2013年通过逆分析估计该地区的甲烷排放,可通过逆0.25°×0.3125°(25×25km2)分辨率和充分错误表征。美国东南部是一个甲烷的主要源区,包括石油和天然气生产和湿地的巨大贡献。我们的反演使用最先进的排放库存作为先前的估计,包括一个人类的人为EPA温室气体库存的网格版本,以及Wetchards湿地的平均值。通过与表面(NOAA / ESRL)和柱(TCCON)甲烷观察相比,独立验证反演结果。我们对东南部的后估计为12.8±0.9tg?a?1用于人为源(从网格的EPA库存没有显着变化)和9.4±0.8tg?湿地的一个?1(从Wetcharts中的平均值下降27%)合奏)。 Watcharts Wetlands Ensemble中最大的误差来源是湿地区域范围的土地覆盖地图规范。我们的研究结果支持EPA人为库存的准确性?区域规模,但石油和天然气生产领域存在显着的局部差异,表明排放因子比EPA库存中的假定更具变量。

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